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病毒诱导的IRF-5和IRF-7之间的异源二聚体形成在体内调节IFNA增强体的组装以及IFNA基因的转录活性。

Virus-induced heterodimer formation between IRF-5 and IRF-7 modulates assembly of the IFNA enhanceosome in vivo and transcriptional activity of IFNA genes.

作者信息

Barnes Betsy J, Field Ann E, Pitha-Rowe Paula M

机构信息

Sidney Kimmel Comprehensive Cancer Center, Baltimore, Maryland 21231, USA.

出版信息

J Biol Chem. 2003 May 9;278(19):16630-41. doi: 10.1074/jbc.M212609200. Epub 2003 Feb 24.

DOI:10.1074/jbc.M212609200
PMID:12600985
Abstract

Transcription factors of the interferon regulatory factor (IRF) family have been identified as critical mediators of early inflammatory gene transcription in infected cells. We have shown previously that IRF-5, like IRF-3 and IRF-7, is a direct transducer of virus-mediated signaling and plays a role in the expression of multiple cytokines/chemokines. The present study is focused on the molecular mechanisms underlying the formation and function of IRF-5/IRF-7 heterodimers in infected cells. The interaction between IRF-5 and IRF-7 is not cooperative and results in a repression rather than enhancement of IFNA gene transcription. The formation of the IRF-5/IRF-7 heterodimer is dependent on IRF-7 phosphorylation, as shown by the glutathione S-transferase pull-down and immunoprecipitation assays. Mapping of the interaction domain revealed that formation of IRF-5/IRF-7 heterodimers occurs through the amino terminus resulting in a masking of the DNA binding domain, the consequent alteration of the composition of the enhanceosome complex binding to IFNA promoters in vivo, and modulation of the expression profile of IFNA subtypes. Thus, these results indicate that IRF-5 can act as both an activator and a repressor of IFN gene induction dependent on the IRF-interacting partner, and IRF-5 may be a part of the regulatory network that ensures timely expression of the immediate early inflammatory genes.

摘要

干扰素调节因子(IRF)家族的转录因子已被确定为受感染细胞中早期炎症基因转录的关键介质。我们之前已经表明,IRF-5与IRF-3和IRF-7一样,是病毒介导信号的直接传导器,并在多种细胞因子/趋化因子的表达中发挥作用。本研究聚焦于受感染细胞中IRF-5/IRF-7异二聚体形成和功能的分子机制。IRF-5与IRF-7之间的相互作用并非协同作用,而是导致IFNA基因转录受到抑制而非增强。如谷胱甘肽S-转移酶下拉实验和免疫沉淀实验所示,IRF-5/IRF-7异二聚体的形成依赖于IRF-7的磷酸化。相互作用结构域的定位显示,IRF-5/IRF-7异二聚体通过氨基末端形成,导致DNA结合结构域被掩盖,从而改变体内与IFNA启动子结合的增强体复合物的组成,并调节IFNA亚型的表达谱。因此,这些结果表明,IRF-5可根据与之相互作用的IRF伴侣,既作为IFN基因诱导的激活剂,也作为抑制剂,并且IRF-5可能是确保立即早期炎症基因及时表达的调节网络的一部分。

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